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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A moving mesh algorithm for aero-thermo-mechanical modeling in turbomachinery
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A moving mesh algorithm for aero-thermo-mechanical modeling in turbomachinery

机译:涡轮机械气动热力学建模的移动网格算法

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This paper describes the development of a mesh deformation method used for aero-thermo-mechanical coupling of turbo-engine components. The method is based on the nonlinear solution of an elastic medium analogy, solved using finite element discretisation and modified to let the boundary nodes be free to slide over the deflected surfaces. This sliding technique relies on a B-spline reconstruction of the moving boundary and increases the robustness of the method in situations where the boundary deflection field presents significant gradients or large relative motion between two distinct boundaries. The performance of the method is illustrated with the application to an interstate cavity of a turbine assembly, subjected to the deformations computed by a coupled thermo-mechanical analysis of the engine component.
机译:本文描述了一种用于涡轮发动机部件的空气-热-机械耦合的网格变形方法的发展。该方法基于弹性介质类比的非线性解决方案,使用有限元离散化进行求解,并进行了修改,以使边界节点可以在偏转的曲面上自由滑动。这种滑动技术依赖于运动边界的B样条重构,并在边界偏转场在两个不同边界之间呈现明显的梯度或较大的相对运动的情况下,提高了方法的鲁棒性。该方法的性能通过应用到涡轮机组件的状态腔中得到说明,该状态经受了由发动机部件的耦合热机械分析所计算出的变形。

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